Psychedelics Promote Structural and Functional Neural Plasticity
Calvin Ly(University of California, Davis), David E. Olson(Multidisciplinary Association for Psychedelic Studies), Sina Soltanzadeh Zarandi(University of California, Davis), Whitney C. Duim(University of California, Davis), Alexandra C. Greb(University of California, Davis), A. Kimberley McAllister(University of California, Davis), Paige C. Wilson(University of California, Davis), Lindsay P. Cameron(University of California, Davis), Michael R. Paddy(University of California, Davis), Megan Y. Dennis(University of California System), Kassandra M Ori-McKenney(University of California System), Kyle F. Burbach(University of California, Davis), J.A. Gray(Fisher College), Eden V. Barragan(University of California, Davis), A. Sood(University of California, Davis), Jonathan M. Wong(University of California, Davis)
Cited by 1,138
Related Papers
Telomere-to-telomere assembly of a complete human X chromosome
|Nature|2020|833
Psychedelics promote neuroplasticity through the activation of intracellular 5-HT2A receptors
|Science|2023|464
The Subjective Effects of Psychedelics May Not Be Necessary for Their Enduring Therapeutic Effects
|ACS Pharmacology & Translational Science|2020|326